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Updated: May 7, 2026

A RANKL-based Osteoclast Culture Assay of Mouse Bone Marrow to Investigate the Role of mTORC1 in Osteoclast Formation
Published on: March 15, 2018
Identification of Rorβ targets in cultured osteoblasts and in human bone
Matthew M Roforth1, Sundeep Khosla, David G Monroe
1Endocrine Research Unit and Kogod Center on Aging, Mayo Clinic, Rochester, MN, USA.
Abstract:
Control of osteoblastic bone formation involves the cumulative action of numerous transcription factors, including both activating and repressive functions that are important during specific stages of differentiation. The nuclear receptor retinoic acid receptor-related orphan receptor β (Rorβ) has been recently shown to suppress the osteogenic phenotype in cultured osteoblasts, and is highly upregulated in bone marrow-derived osteogenic precursors isolated from aged osteoporotic mice, suggesting Rorβ is an important regulator of osteoblast function. However the specific gene expression patterns elicited by Rorβ are unknown. Using microarray analysis, we identified 281 genes regulated by Rorβ in an MC3T3-E1 mouse osteoblast cell model (MC3T3-Rorβ-GFP). Pathway analysis revealed alterations in genes involved in MAPK signaling, genes involved in extracellular matrix (ECM) regulation, and cytokine-receptor interactions. Whereas the identified Rorβ-regulated ECM genes normally decline during osteoblastic differentiation, they were highly upregulated in this non-mineralizing MC3T3-Rorβ-GFP model system, suggesting that Rorβ may exert its anti-osteogenic effects through ECM disruption. Consistent with these in vitro findings, the expression of both RORβ and a subset of RORβ-regulated genes were increased in bone biopsies from postmenopausal women (73±7 years old) compared to premenopausal women (30±5 years old), suggesting a role for RORβ in human age-related bone loss. Collectively, these data demonstrate that Rorβ regulates known osteogenic pathways, and may represent a novel therapeutic target for age-associated bone loss.
Insights
Retinoic acid receptor-related orphan receptor beta (Rorβ) suppresses osteoblast function and is upregulated in aging bone. Rorβ disrupts extracellular matrix regulation, potentially contributing to age-related bone loss.
Area of Science:
- Molecular Biology
- Cell Biology
- Bone Biology
Background:
- Osteoblast differentiation is regulated by transcription factors.
- Retinoic acid receptor-related orphan receptor beta (Rorβ) suppresses osteogenic phenotype.
- Rorβ is upregulated in osteoporotic bone and may regulate osteoblast function.
Purpose of the Study:
- To identify gene expression patterns regulated by Rorβ in osteoblasts.
- To investigate the role of Rorβ in age-related bone loss.
Main Methods:
- Microarray analysis of MC3T3-E1 mouse osteoblasts expressing Rorβ.
- Pathway analysis of Rorβ-regulated genes.
- Comparison of gene expression in human bone biopsies from premenopausal and postmenopausal women.
Main Results:
- Rorβ regulates 281 genes, impacting MAPK signaling, ECM regulation, and cytokine-receptor interactions.
- Rorβ upregulates ECM genes that normally decline during osteoblast differentiation, suggesting ECM disruption.
- Rorβ and its target genes are increased in postmenopausal women's bone biopsies.
Conclusions:
- Rorβ regulates osteogenic pathways and may contribute to age-associated bone loss.
- Rorβ's anti-osteogenic effects may involve ECM disruption.
- Rorβ represents a potential therapeutic target for age-related bone loss.

